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A fracture mechanics approach to haptic synthesis of tissue cutting with scissors

机译:一种抗冲击组织切割与剪刀的裂缝力学方法

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An analytical model for cutting of a plate of material with a pair of scissors is presented in terms of concepts of contact and fracture mechanics. The forces of contact between the blade of the scissors and the plate are expressed by a nonlinear function of deflection at the crack front multiplied by the length of the contact region between the blade and the plate. The cutting model captures the combined effect of multiple fracture modes. The level of deflection that causes fracture is obtained using an energy approach. The cutting model predicts that, during fracture, force and torque responses of the scissors depend on the toughness and geometry of the plate, but do not depend on the stiffness of the plate. The model is used for haptic synthesis of interaction between a pair of scissors and a virtual plate. An implementation of the model is presented for the case of surgical scissors in contact with skin. The simulation results are compared to previous experimental data, demonstrating the realism of the cutting model behavior. This haptic rendering technique is computationally efficient and can be applied to real-time simulation.
机译:用一对剪刀切割带有一对剪刀的材料的分析模型,并提出了接触和断裂力学的概念。剪刀叶片和板之间的接触力由裂缝前沿的偏转的非线性函数表示,乘坐叶片和板之间的接触区域的长度乘以。切割模型捕获多个裂缝模式的组合效果。使用能量方法获得导致骨折的偏转水平。切割模型预测,在裂缝期间,剪刀的力和扭矩响应取决于板的韧性和几何形状,但不依赖于板的刚度。该模型用于触觉合成一对剪刀和虚拟板之间的相互作用。为与皮肤接触的外科剪刀的情况提出了该模型的实现。将仿真结果与先前的实验数据进行比较,证明了切割模型行为的现实主义。这种触觉渲染技术是计算上高效的,可以应用于实时仿真。

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